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利用开源 3D 打印机架构进行实验室机器人自动化高通量延时成像分析微生物学。

Exploiting open source 3D printer architecture for laboratory robotics to automate high-throughput time-lapse imaging for analytical microbiology.

机构信息

Reading School of Pharmacy, University of Reading, Whiteknights, Reading, United Kingdom.

Centre for Electronic Imaging, The Open University, Milton Keynes, United Kingdom.

出版信息

PLoS One. 2019 Nov 19;14(11):e0224878. doi: 10.1371/journal.pone.0224878. eCollection 2019.

Abstract

Growth in open-source hardware designs combined with the low-cost of high performance optoelectronic and robotics components has supported a resurgence of in-house custom lab equipment development. We describe a low cost (below $700), open-source, fully customizable high-throughput imaging system for analytical microbiology applications. The system comprises a Raspberry Pi camera mounted on an aluminium extrusion frame with 3D-printed joints controlled by an Arduino microcontroller running open-source Repetier Host Firmware. The camera position is controlled by simple G-code scripts supplied from a Raspberry Pi singleboard computer and allow customized time-lapse imaging of microdevices over a large imaging area. Open-source OctoPrint software allows remote access and control. This simple yet effective design allows high-throughput microbiology testing in multiple formats including formats for bacterial motility, colony growth, microtitre plates and microfluidic devices termed 'lab-on-a-comb' to screen the effects of different culture media components and antibiotics on bacterial growth. The open-source robot design allows customization of the size of the imaging area; the current design has an imaging area of ~420 × 300mm, which allows 29 'lab-on-a-comb' devices to be imaged which is equivalent 3480 individual 1μl samples. The system can also be modified for fluorescence detection using LED and emission filters embedded on the PiCam for more sensitive detection of bacterial growth using fluorescent dyes.

摘要

开源硬件设计的增长,加上高性能光电和机器人组件的低成本,支持了内部定制实验室设备的重新发展。我们描述了一种低成本(低于 700 美元)、开源、完全可定制的高通量成像系统,用于分析微生物学应用。该系统包括安装在铝挤出框架上的 Raspberry Pi 相机,其 3D 打印关节由运行开源 Repetier Host Firmware 的 Arduino 微控制器控制。相机位置由来自 Raspberry Pi 单板计算机的简单 G 代码脚本控制,允许在大成像区域上对微器件进行自定义延时成像。开源 OctoPrint 软件允许远程访问和控制。这种简单而有效的设计允许进行多种格式的高通量微生物学测试,包括细菌运动、菌落生长、微量滴定板和微流控器件的格式,称为“梳子上的实验室”,以筛选不同培养基成分和抗生素对细菌生长的影响。开源机器人设计允许对成像区域的大小进行自定义;目前的设计具有约 420×300mm 的成像区域,允许对 29 个“梳子上的实验室”设备进行成像,相当于对 3480 个单独的 1μl 样本进行成像。该系统还可以通过在 PiCam 上嵌入 LED 和发射滤波器进行荧光检测进行修改,以使用荧光染料更敏感地检测细菌生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5076/6863568/1c877e297562/pone.0224878.g001.jpg

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